2021
DOI: 10.1002/adem.202100853
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Hot Deformation Behavior of a Powder Metallurgy Superalloy with High γ′ Content

Abstract: The hot deformation behavior of a powder metallurgy superalloy EP741NP is studied using isothermal compression testing on a Gleeble‐3500 thermomechanical simulator. Constitutive equations and processing maps are then constructed based on the experimental stress–strain data, and microstructural changes are analyzed by sectioning the compressed samples. The results show that most stress–strain curves are characterized by rapid work hardening and slow flow softening. Steady‐state flow stress is achieved under low… Show more

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Cited by 3 publications
(1 citation statement)
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“…So, they are often employed to manufacture the vital parts in aero engines. [1][2][3] The rheological behavior and microstructure evolution during hot forming significantly affect the properties of P/M superalloy parts. For the P/M superalloy, the work hardening (WH), dynamic softening (DS), phase transition (PT), and other complicated deformation mechanisms appear in hot deformation or forming process.…”
Section: Introductionmentioning
confidence: 99%
“…So, they are often employed to manufacture the vital parts in aero engines. [1][2][3] The rheological behavior and microstructure evolution during hot forming significantly affect the properties of P/M superalloy parts. For the P/M superalloy, the work hardening (WH), dynamic softening (DS), phase transition (PT), and other complicated deformation mechanisms appear in hot deformation or forming process.…”
Section: Introductionmentioning
confidence: 99%